Miura Shogo, Kamiya Sadahiro, Saito Yohei, Wada Seiki, Hayashi Ryo, Taira Junichi, Kodama Hiroaki, Yajima Hirofumi, Ueki Masaaki, Fukai Fumio
Department of Molecular Patho-Physiology, Faculty of Pharmaceutical Sciences, Tokyo University of Science, Noda, Chiba, Japan.
Biol Pharm Bull. 2007 May;30(5):891-7. doi: 10.1248/bpb.30.891.
We have found that fibronectin (FN) has a functional cryptic site opposing cell adhesion to extracellular matrix (ECM): a synthetic FN peptide derived from the 14th FN type III-like (FN-III) repeat, termed peptide FNIII14, inhibits cell adhesion to the FN without binding to beta1 integrins. This antiadhesive activity of peptide FNIII14 depends on its C-terminal amino acid sequence YTIYVIAL. A 50-kDa membrane protein (p50) has been detected as a specific binding protein of peptide FNIII14. Here we showed that antiadhesive activity of peptide FNIII14 was depedent upon the presence of p50 on cell surfaces. Furthermore, we found that there exists a sequence, analogous to the YTIYVIAL, in the 10th FN-III repeat of the FN molecule and that a FN peptide containing this analogous sequence, termed peptide FNIII10, inhibited cell adhesion to the FN. Peptide FNIII10 appeared to share p50 with peptide FNIII14 in expressing the antiadhesive activity. As a physiological consequence of decreased adhesion, peptides FNIII10 and FNIII14 accelerated the anoikis-like apoptosis of normal fibroblasts by down-regulating Bcl-2 expression through blocking the FAK/PI3K/Akt signaling pathway. Thus, the YTIYVIAL-related sequences of the FN molecule may be involved in cell regulation by modulating negatively cell adhesion to the ECM, in which p50 probably serves as a membrane receptor.
我们发现纤连蛋白(FN)存在一个与细胞黏附于细胞外基质(ECM)相对的功能性隐蔽位点:一种源自第14个FN III样(FN-III)重复序列的合成FN肽,称为肽FNIII14,可抑制细胞与FN的黏附,且不与β1整合素结合。肽FNIII14的这种抗黏附活性取决于其C末端氨基酸序列YTIYVIAL。一种50 kDa的膜蛋白(p50)已被检测为肽FNIII14的特异性结合蛋白。在此我们表明,肽FNIII14的抗黏附活性取决于细胞表面p50的存在。此外,我们发现FN分子的第10个FN-III重复序列中存在一个与YTIYVIAL类似的序列,且含有该类似序列的FN肽,称为肽FNIII10,可抑制细胞与FN的黏附。肽FNIII10在表达抗黏附活性方面似乎与肽FNIII14共享p50。作为黏附减少的生理后果,肽FNIII10和FNIII14通过阻断FAK/PI3K/Akt信号通路下调Bcl-2表达,加速了正常成纤维细胞的失巢凋亡样凋亡。因此,FN分子中与YTIYVIAL相关的序列可能通过负向调节细胞与ECM的黏附参与细胞调节,其中p50可能作为膜受体。